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Comparative study of microstructure and properties of low-alloy-steel/nickel-based-alloy interfaces in dissimilar metal weld joints prepared by different GTAW methods

机译:不同GTAW方法制备的低合金 - 钢/镍基合金界面的微观结构和性能的比较研究

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摘要

Low-alloy-steel/buttering (or welding) metal interfaces in safe-end dissimilar metal weld joints (DMWJs) at nuclear power plants are weak parts. To optimize the quality of the safe-end DMWJs used for the construction of domestic nuclear power plants and to improve the welding productivity, a series of DMWJs in full-size have been manufactured by using different gas tungsten arc welding (GTAW) methods. The microstructure, chemical composition distribution and local properties across the SA508/52(M) interfaces in these DMWJs are studied. The high heat input and long high temperature duration during hot-wire GTAW process promote the carbon diffusion and grain boundary migration and hence the DMWJ by hot-wire GTAW has the largest amount of type I and type II boundaries and the widest carbon depleted zones and carbon enriched zones, which resulting in the worst performance among the DMWJs in simulated primary water. Type I and type II boundaries are high angle random grain boundaries (RGBs) and Cr-depleted zones are found along type II boundaries resulting in their high susceptibility to SCC. In addition, these boundaries are prone to be cracked during mechanical bending process.
机译:核电厂安全终端不同金属焊接接头(DMWJS)中的低合金钢/涂油(或焊接)金属界面是弱零件。为了优化用于建造国内核电站的安全端DMWJ的质量并提高焊接生产力,通过使用不同的气体钨电弧焊接(GTAW)方法制造了一系列全尺寸的DMWJ。研究了这些DMWJS中SA508 / 52(M)界面上的微观结构,化学成分分布和局部特性。热线GTAW过程中的高热输入和长度高温持续时间促进了碳扩散和晶界迁移,因此通过热线GTAW的DMWJ具有最大的I型和II型边界和最宽的碳耗尽区碳富集的区域,导致模拟初级水中DMWJS之间的最差性能。 I型和II型边界是高角度随机晶晶界(RGBS),并且沿II型边界发现CR耗尽的区域,导致它们对SCC的高易感性。另外,在机械弯曲过程中,这些边界易于破裂。

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